Access the full text.
Sign up today, get DeepDyve free for 14 days.
R. Stull (1976)
Mixed-Layer Depth Model Based on Turbulent EnergeticsJournal of the Atmospheric Sciences, 33
O. Zeman, H. Tennekes (1977)
Parameterization of the Turbulent Energy Budget at the Top of the Daytime Atmospheric Boundary LayerJournal of the Atmospheric Sciences, 34
J. Kaimal, J. Wyngaard, D. Haugen, O. Coté, Y. Izumi, S. Caughey, C. Readings (1976)
Turbulence Structure in the Convective Boundary LayerJournal of the Atmospheric Sciences, 33
A. Driedonks (1982)
Models and observations of the growth of the atmospheric boundary layerBoundary-Layer Meteorology, 23
R. Rayment, C. Readings (1974)
A case study of the structure and energetics of an inversionQuarterly Journal of the Royal Meteorological Society, 100
K. Kunkel, E. Eloranta, S. Shipley (1977)
Lidar Observations of the Convective Boundary LayerJournal of Applied Meteorology, 16
L. Mahrt (1979)
Penetrative convection at the top of a growing boundary layerQuarterly Journal of the Royal Meteorological Society, 105
H. Tennekes (1973)
A Model for the Dynamics of the Inversion Above a Convective Boundary LayerJournal of the Atmospheric Sciences, 30
J. Deardorff, G. Willis, B. Stockton (1980)
Laboratory studies of the entrainment zone of a convectively mixed layerJournal of Fluid Mechanics, 100
T. Konrad (1970)
The Dynamics of the Convective Process in Clear Air as Seen by RadarJournal of the Atmospheric Sciences, 27
K. Hardy, H. Óttersten (1969)
Radar investigations of convective patterns in the clear atmosphere.Journal of the Atmospheric Sciences, 26
R. Boers, E. Eloranta, R. Coulter (1984)
Lidar Observations of Mixed Layer Dynamics: Tests of Parameterized Entrainment Models of Mixed Layer Growth Rate, 23
O. Phillips (1972)
The entrainment interfaceJournal of Fluid Mechanics, 51
J. Deardorff (1979)
Prediction of Convective Mixed-Layer Entrainment for Realistic Capping Inversion StructureJournal of the Atmospheric Sciences, 36
R. Boers, E. W. Eloranta, R. L. Coulter (1984)
Lidar Measurements of Boundary Layer Dynamics: Tests of Parametized Models of Mixed-Layer Growth RateJ. Clim. Appl. Meteorol., 23
J. Deardorff, G. Willis, D. Lilly (1969)
Laboratory investigation of non-steady penetrative convectionJournal of Fluid Mechanics, 35
R. Stull (1973)
Inversion Rise Model Based on Penetrative ConvectionJournal of the Atmospheric Sciences, 30
J. Sroga, E. Eloranta, T. Barber (1980)
Lidar Measurement of Wind Velocity Profiles in the Boundary LayerJournal of Applied Meteorology, 19
Lidar measurements of the thickness of the atmospheric entrainment zone are presented. The measurements were obtained in central Illinois during 6 days of clear-air convection.
Boundary-Layer Meteorology – Springer Journals
Published: May 20, 2004
Read and print from thousands of top scholarly journals.
Already have an account? Log in
Bookmark this article. You can see your Bookmarks on your DeepDyve Library.
To save an article, log in first, or sign up for a DeepDyve account if you don’t already have one.
Copy and paste the desired citation format or use the link below to download a file formatted for EndNote
Access the full text.
Sign up today, get DeepDyve free for 14 days.
All DeepDyve websites use cookies to improve your online experience. They were placed on your computer when you launched this website. You can change your cookie settings through your browser.